Aerobiology in South Africa: A new hope!

Pollen and fungal spores (aerospora) are the major atmospheric bioaerosols. Aerospora occurrence and concentration vary by geographical region and blossoming period, and with meteorological factors. Allergic respiratory diseases affect about 20 million South Africans, with pollen and fungal allerge...

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Main Authors: Linus Ajikah, Frank H. Neumann, Dilys Berman, Jonny Peter
Format: Article
Language:English
Published: Academy of Science of South Africa 2020-07-01
Series:South African Journal of Science
Subjects:
Online Access:https://www.sajs.co.za/article/view/8112
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spelling doaj-c23987363fdf4910b6dc6fc7227125402020-11-25T03:07:38ZengAcademy of Science of South AfricaSouth African Journal of Science1996-74892020-07-011167/810.17159/sajs.2020/8112Aerobiology in South Africa: A new hope!Linus Ajikah0Frank H. Neumann1Dilys Berman2Jonny Peter31.Evolutionary Studies Institute and School of Geosciences, University of the Witwatersrand, Johannesburg, South Africa; 2.Department of Plants and Ecological Studies, University of Calabar, Calabar, NigeriaEvolutionary Studies Institute and School of Geosciences, University of the Witwatersrand, Johannesburg, South Africa1.Allergy and Immunology Unit, University of Cape Town Lung Institute, University of Cape Town, Cape Town, South Africa; 2.Division of Allergy and Clinical Immunology, University of Cape Town, Cape Town, South Africa1.Allergy and Immunology Unit, University of Cape Town Lung Institute, University of Cape Town, Cape Town, South Africa; 2.Division of Allergy and Clinical Immunology, University of Cape Town, Cape Town, South Africa Pollen and fungal spores (aerospora) are the major atmospheric bioaerosols. Aerospora occurrence and concentration vary by geographical region and blossoming period, and with meteorological factors. Allergic respiratory diseases affect about 20 million South Africans, with pollen and fungal allergens amongst the leading triggers. Asthma triggered by aerospora can be life threatening; allergic rhinitis causes considerable morbidity and carries financial implications for individuals and health systems. Thus, knowledge about geographical variation, seasonal timing and intensity, as well as annual aerospora fluctuations in South Africa, where climate and vegetation are exceptionally diverse, is essential for effective diagnosis and treatment of allergies. Unfortunately, there is a lack of continuous aeropalynological data from South Africa. The longest annual monitoring exists for Cape Town (~20 years), with almost no data out of the Cape since the 1990s, and many parts of South Africa have never been monitored. In this brief review, we highlight the cross-disciplinary need for strengthened and expanded continuous aeropalynological study in South Africa, the history of efforts to date, and the introduction of the interdisciplinary South African Pollen Network (SAPNET). SAPNET was launched in seven major cities in August 2019 in order to monitor weekly variations of aerospora, and provide online data for allergy sufferers and health-care providers (www.pollencount.co.za) with the aim to establish regional pollen calendars. Significance: • The significance of aerobiology as the study of airborne organic particles which include pollen, spores of fungi and cryptogams, plant hair, insect remains etc. especially as agents of allergic rhinitis (commonly known as hay fever) is outlined. Cases of allergic rhinitis are globally increasing due to current climate change. • Very limited pollen monitoring data are available for South Africa; such data are a prerequisite for establishing pollen calendars to help medical practitioners and allergy sufferers. SAPNET (South African Pollen Network) addresses this lack of data. Since August 2019, seven 7-day volumetric spore traps have been operating in South Africa in major cities, and are continuously gathering data about the pollen and spore contents in a country which is highly affected by allergic rhinitis. https://www.sajs.co.za/article/view/8112aerosporapollen monitoring networkpollen allergypublic health
collection DOAJ
language English
format Article
sources DOAJ
author Linus Ajikah
Frank H. Neumann
Dilys Berman
Jonny Peter
spellingShingle Linus Ajikah
Frank H. Neumann
Dilys Berman
Jonny Peter
Aerobiology in South Africa: A new hope!
South African Journal of Science
aerospora
pollen monitoring network
pollen allergy
public health
author_facet Linus Ajikah
Frank H. Neumann
Dilys Berman
Jonny Peter
author_sort Linus Ajikah
title Aerobiology in South Africa: A new hope!
title_short Aerobiology in South Africa: A new hope!
title_full Aerobiology in South Africa: A new hope!
title_fullStr Aerobiology in South Africa: A new hope!
title_full_unstemmed Aerobiology in South Africa: A new hope!
title_sort aerobiology in south africa: a new hope!
publisher Academy of Science of South Africa
series South African Journal of Science
issn 1996-7489
publishDate 2020-07-01
description Pollen and fungal spores (aerospora) are the major atmospheric bioaerosols. Aerospora occurrence and concentration vary by geographical region and blossoming period, and with meteorological factors. Allergic respiratory diseases affect about 20 million South Africans, with pollen and fungal allergens amongst the leading triggers. Asthma triggered by aerospora can be life threatening; allergic rhinitis causes considerable morbidity and carries financial implications for individuals and health systems. Thus, knowledge about geographical variation, seasonal timing and intensity, as well as annual aerospora fluctuations in South Africa, where climate and vegetation are exceptionally diverse, is essential for effective diagnosis and treatment of allergies. Unfortunately, there is a lack of continuous aeropalynological data from South Africa. The longest annual monitoring exists for Cape Town (~20 years), with almost no data out of the Cape since the 1990s, and many parts of South Africa have never been monitored. In this brief review, we highlight the cross-disciplinary need for strengthened and expanded continuous aeropalynological study in South Africa, the history of efforts to date, and the introduction of the interdisciplinary South African Pollen Network (SAPNET). SAPNET was launched in seven major cities in August 2019 in order to monitor weekly variations of aerospora, and provide online data for allergy sufferers and health-care providers (www.pollencount.co.za) with the aim to establish regional pollen calendars. Significance: • The significance of aerobiology as the study of airborne organic particles which include pollen, spores of fungi and cryptogams, plant hair, insect remains etc. especially as agents of allergic rhinitis (commonly known as hay fever) is outlined. Cases of allergic rhinitis are globally increasing due to current climate change. • Very limited pollen monitoring data are available for South Africa; such data are a prerequisite for establishing pollen calendars to help medical practitioners and allergy sufferers. SAPNET (South African Pollen Network) addresses this lack of data. Since August 2019, seven 7-day volumetric spore traps have been operating in South Africa in major cities, and are continuously gathering data about the pollen and spore contents in a country which is highly affected by allergic rhinitis.
topic aerospora
pollen monitoring network
pollen allergy
public health
url https://www.sajs.co.za/article/view/8112
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